Lighting network for controlling reactive power demand
US-2021126461-A1 · Apr 29, 2021 · US
US11758625B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-11758625-B1 |
| Application number | US-202217857037-A |
| Country | US |
| Kind code | B1 |
| Filing date | Jul 3, 2022 |
| Priority date | Mar 11, 2022 |
| Publication date | Sep 12, 2023 |
| Grant date | Sep 12, 2023 |
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A lighting device includes a light source, a conducting wire, a controller and a coding switch. The conducting wire is connected to the light source. The controller is connected to a power source and a conducing wire. The coding switch is connected to the controller. The coded value of the coding switch is adjustable, such that the coded value is corresponding to the wire length of the conducting wire. The controller adjusts the duty cycle of a driving signal according the wire length corresponding to the coded value, and outputs the driving signal to the light source in order to drive the light source. The lighting device can provide the illumination compensation function via the coding switch without a phototube, which can significantly reduce the cost of the lighting device in order to satisfy the actual requirements.
Opening claim text (preview).
What is claimed is: 1. A lighting device having illumination compensation function, comprising: a light source; a conducting wire selected from a plurality of wires, connected to the light source; a controller, connected to a power source and the conducting wire; and a coding switch, connected to the controller, wherein a coded value of the coding switch is selectable from a plurality of coded values, whereby the plurality of coded values correspond to a wire lengths of the plurality of conducting wires; a plurality of buttons disposed on the coding switch, wherein each of the plurality of buttons has an on and off state, and wherein the combined on and off states of the plurality of buttons define a plurality of combinations such that each of the plurality of combinations correspond to a different coded value of the plurality of coded values; wherein the controller adjusts a duty cycle of a driving signal according the wire length corresponding to the coded value, and outputs the driving signal to the light source in order to drive the light source, wherein the duty cycle of the driving signal is a sum of a reference duty cycle, and a product of the wire length of the conducting wire and a compensation coefficient. 2. The lighting device having illumination compensation function as claimed in claim 1 , wherein the light source is a lighting-emitting diode (LED) or an LED array. 3. An illumination compensation method for a lighting device, comprising: connecting a conducting wire to a light source, wherein the conducting wire is selected from a plurality of conducting wires each having a different wire length; connecting a controller to a power source and the conducting wire; connecting a coding switch to the controller, wherein a plurality of buttons are disposed on the coding switch, wherein each of the plurality of buttons has an on and off state, wherein the combined on and off states of the plurality of buttons define a plurality of combinations such that each of the plurality of combinations correspond to a different coded value of a plurality of coded values, wherein each coded value of the plurality of coded values corresponds to the wire length of one of the plurality of conducting wires; adjusting the coded value of the coding switch to make the coded value correspond to the wire length of the conducting wire; adjusting a duty cycle of a driving signal of the controller according to the wire length corresponding to the coded value by the controller, wherein the duty cycle of the driving signal is a sum of a reference duty cycle, and a product of the wire length of the conducting wire and a compensation coefficient; and outputting the driving signal to the light source by the controller so as to drive the light source. 4. The illumination compensation method for the lighting device as claimed in claim 3 , wherein the light source is an LED or an LED array.
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